GenBit LLC, Moscow, Russia.
All-Russian Research Institute of Phytopathology, Bolshie Vyazemy, Russia.
J Appl Microbiol. 2018 Mar;124(3):797-809. doi: 10.1111/jam.13686. Epub 2018 Feb 11.
Create a method for highly sensitive, selective, rapid and easy-to-use detection and identification of economically significant potato pathogens, including viruses, bacteria and oomycetes, be it single pathogen, or a range of various pathogens occurring simultaneously.
Test-systems for real-time PCR, operating in the unified amplification regime, have been developed for Phytophthora infestans, Pectobacterium atrosepticum, Dickeya dianthicola, Dickeya solani, Ralstonia solanacearum, Pectobacterium carotovorum, Clavibacter michiganensis subsp. sepedonicus, potato viruses Y (ordinary and necrotic forms as well as indiscriminative test system, detecting all forms), A, X, S, M, potato leaf roll virus, potato mop top virus and potato spindle tuber viroid. The test-systems (including polymerase and revertase) were immobilized and lyophilized in miniature microreactors (1·2 μl) on silicon DNA/RNA microarrays (micromatrices) to be used with a mobile AriaDNA amplifier.
Preloaded 30-reaction micromatrices having shelf life of 3 and 6 months (for RNA- and DNA-based pathogens, respectively) at room temperature with no special conditions were successfully tested on both reference and field samples in comparison with traditional ELISA and microbiological methods, showing perfect performance and sensitivity (1 pg).
The accurate, rapid and user-friendly diagnostic system in a micromatrix format may significantly contribute to pathogen screening and phytopathological studies.
创建一种方法,用于高度敏感、选择性强、快速且易于使用的检测和鉴定具有经济重要性的马铃薯病原体,包括病毒、细菌和卵菌,无论是单一病原体还是同时存在的多种病原体。
针对致病疫霉、果胶杆菌软腐亚种、番茄溃疡病菌、番茄腐烂茎线虫、茄科雷尔氏菌、胡萝卜软腐欧文氏菌、密执安棒形杆菌马铃薯亚种、马铃薯 Y 病毒(普通和坏死形式以及不分型检测系统,可检测所有形式)、A 病毒、X 病毒、S 病毒、M 病毒、马铃薯卷叶病毒、马铃薯丛枝病毒和马铃薯纺锤块茎类病毒,开发了实时 PCR 测试系统,这些系统在统一的扩增条件下运行。测试系统(包括聚合酶和逆转录酶)被固定和冻干在微型微反应器(1.2 μl)上的硅 DNA/RNA 微阵列(微矩阵)上,以便与移动的 AriaDNA 扩增仪一起使用。
预加载的 30 反应微矩阵在室温下具有 3 个月和 6 个月的保质期(分别用于 RNA 和 DNA 病原体),无需特殊条件,与传统的 ELISA 和微生物学方法相比,在参考和现场样本上均成功进行了测试,表现出完美的性能和灵敏度(1pg)。
这种准确、快速且用户友好的微矩阵格式诊断系统可能会极大地促进病原体筛选和植物病理学研究。